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US20110267673A1 - Sealants and conductive busbars for chromogenic devices - Google Patents

Sealants and conductive busbars for chromogenic devices
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Publication number
US20110267673A1
US20110267673A1US13/184,071US201113184071AUS2011267673A1US 20110267673 A1US20110267673 A1US 20110267673A1US 201113184071 AUS201113184071 AUS 201113184071AUS 2011267673 A1US2011267673 A1US 2011267673A1
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United States
Prior art keywords
electrooptic
conductive
mirror
busbar
perimeter
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Granted
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US13/184,071
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US8693079B2 (en
Inventor
Anoop Agrawal
John P. Cronin
Juan Carlos L. Tonazzi
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AJJER LLC
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AJJER LLC
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Priority claimed from PCT/US2009/032491external-prioritypatent/WO2009099900A2/en
Priority claimed from US13/091,032external-prioritypatent/US8988756B2/en
Application filed by AJJER LLCfiledCriticalAJJER LLC
Priority to US13/184,071priorityCriticalpatent/US8693079B2/en
Assigned to AJJER LLCreassignmentAJJER LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: AGRAWAL, ANOOP, CRONIN, JOHN P., TONAZZI, JUAN CARLOS L.
Publication of US20110267673A1publicationCriticalpatent/US20110267673A1/en
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Abstract

This invention discloses conductive busbars and sealants for electrooptic devices including electrochromic mirrors and windows. The conductive busbars are formed from materials comprising nanoparticles, and the sealants comprise of additives that promote a two phase morphology and use of adhesion promotion additives with crosslinkers. Methods to deposit busbars and then to connect these busbars to electrical connectors are also disclosed.

Description

Claims (30)

1. An electrooptic variable reflectance mirror for vehicles comprising front and rear spaced elements, said rear surface of the front element having a layer of transparent conductive coating disposed thereon, and said front surface of said rear element comprises at least one layer of conductive coating, where the front and the rear elements are sealably bonded together by a spaced apart relationship defining a chamber there between, said chamber comprising an electrooptic medium, and wherein at least one of the rear surface of the said front element and the front surface of the said rear element has a conductive busbar deposited on its perimeter or a portion of its perimeter wherein the said busbar is formed comprising nanoparticles which impart conductivity to the said busbar, and the size of the said nanoparticles is less than 40 nm.
26. An electrooptic variable reflectance mirror for vehicles or an electrochromic window, comprising front and rear spaced elements, said rear surface of the front element having a layer of transparent conductive coating disposed thereon, and said front surface of said rear element comprises at least one layer of conductive coating, wherein the front and the rear elements are sealably bonded at the perimeter by a spaced apart relationship defining a chamber there between, said chamber containing an electrooptic medium, and the said perimeter sealant having more than one opening, wherein at least one opening is used for filling the electrooptic medium into the said chamber and one opening for venting the gas from the chamber as it is being filled by the said electrooptic medium; and the geometry of the opening for the electrolyte filling is different as compared to the geometry the vent.
US13/184,0712008-01-312011-07-15Sealants and conductive busbars for chromogenic devicesActive2029-05-01US8693079B2 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US13/184,071US8693079B2 (en)2008-01-312011-07-15Sealants and conductive busbars for chromogenic devices

Applications Claiming Priority (7)

Application NumberPriority DateFiling DateTitle
US6316008P2008-01-312008-01-31
US6804208P2008-03-042008-03-04
US5631108P2008-05-272008-05-27
PCT/US2009/032491WO2009099900A2 (en)2008-01-312009-01-29Environmentally safe electrochromic devices and assemblies
US86568810A2010-10-222010-10-22
US13/091,032US8988756B2 (en)2008-01-312011-04-20Conductive busbars and sealants for chromogenic devices
US13/184,071US8693079B2 (en)2008-01-312011-07-15Sealants and conductive busbars for chromogenic devices

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US13/091,032Continuation-In-PartUS8988756B2 (en)2008-01-312011-04-20Conductive busbars and sealants for chromogenic devices

Publications (2)

Publication NumberPublication Date
US20110267673A1true US20110267673A1 (en)2011-11-03
US8693079B2 US8693079B2 (en)2014-04-08

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US20140174171A1 (en)*2012-12-212014-06-26Murray W. DavisPortable self powered line mountable device for measuring and transmitting rainfall measurements
US20150028221A1 (en)*2013-07-232015-01-29Hamilton Sundstrand CorporationMethods of ion source fabrication
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CN110471230A (en)*2019-09-062019-11-19南通繁华新材料科技有限公司A kind of electrochomeric glass and its manufacturing method
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US10802371B2 (en)2011-12-122020-10-13View, Inc.Thin-film devices and fabrication
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US10981791B2 (en)2015-04-132021-04-20Garmor Inc.Graphite oxide reinforced fiber in hosts such as concrete or asphalt
US11038182B2 (en)2015-09-212021-06-15Garmor Inc.Low-cost, high-performance composite bipolar plate
US20210202434A1 (en)*2018-08-302021-07-01Siemens AktiengesellschaftMethod for Producing Conductive Tracks, and Electronic Module
US11054711B2 (en)2014-11-252021-07-06View, Inc.Electromagnetic-shielding electrochromic windows
US11090858B2 (en)2014-03-252021-08-17Stratasys Ltd.Method and system for fabricating cross-layer pattern
CN113560152A (en)*2021-07-262021-10-29中国科学院兰州化学物理研究所 A method for lubricating the surface of a vacuum current-carrying sliding electrical contact part
US11214658B2 (en)2016-10-262022-01-04Garmor Inc.Additive coated particles for low cost high performance materials
WO2022109587A1 (en)*2020-11-192022-05-27Yazaki CorporationAluminum-scandium alloys for busbars
US11426979B2 (en)2011-12-122022-08-30View, Inc.Thin-film devices and fabrication
US11482348B2 (en)2015-06-092022-10-25Asbury Graphite Of North Carolina, Inc.Graphite oxide and polyacrylonitrile based composite
US11561446B2 (en)2011-09-302023-01-24View, Inc.Fabrication of electrochromic devices
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CN115910428A (en)*2022-12-012023-04-04深圳清研装备科技有限公司Preparation method and application of carbon-based composite conductive particles
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US20100039690A1 (en)*2008-05-192010-02-18Ajjer LlcComposite electrode and electrolytes comprising nanoparticles and resulting devices
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US8551603B2 (en)*2008-06-172013-10-08Pilkington Group LimitedSealed switchable glazing
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CN110471230A (en)*2019-09-062019-11-19南通繁华新材料科技有限公司A kind of electrochomeric glass and its manufacturing method
US11791061B2 (en)2019-09-122023-10-17Asbury Graphite North Carolina, Inc.Conductive high strength extrudable ultra high molecular weight polymer graphene oxide composite
WO2022109587A1 (en)*2020-11-192022-05-27Yazaki CorporationAluminum-scandium alloys for busbars
EP4247990A4 (en)*2020-11-192025-06-18Yazaki Corporation ALUMINUM-SCANDIUM ALLOYS FOR BUSBARS
CN113560152A (en)*2021-07-262021-10-29中国科学院兰州化学物理研究所 A method for lubricating the surface of a vacuum current-carrying sliding electrical contact part
US11686966B2 (en)*2021-08-302023-06-27Switchble LlcBusbar anchoring system and method for PDLC films
US20230129768A1 (en)*2021-08-302023-04-27Switchble LlcBusbar anchoring system and method for pdlc films
CN115910428B (en)*2022-12-012024-05-31深圳清研锂业科技有限公司Preparation method and application of carbon-based composite conductive particles
CN115910428A (en)*2022-12-012023-04-04深圳清研装备科技有限公司Preparation method and application of carbon-based composite conductive particles

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